Search results for "Transposable element"

showing 10 items of 107 documents

Two new Salmonella genomic islands 1 from Proteus mirabilis and description of blaCTX-M-15 on a variant (SGI1-K7)

2018

Objectives To characterize the structure of Salmonella genomic islands 1 (SGI1s) from two clinical Proteus mirabilis isolates: one producing an ESBL and the other a penicillinase. Methods WGS completed by PCR and Sanger sequencing was performed to determine sequences of SGI1s from Pm2CHAMA and Pm37THOMI strains. Results Two new variants of SGI1 named SGI1-Pm2CHAMA (53.6 kb) and SGI1-K7 (55.1 kb) were identified. The backbone of SGI1-Pm2CHAMA shared 99.9% identity with that of SGI1. Its MDR region (26.3 kb) harboured two class 1 integrons (an In2-type integron and an In4-type integron) containing in particular a qacH cassette (encoding a quaternary ammonium compound efflux pump). These two i…

DNA Bacterial0301 basic medicineMicrobiology (medical)Transposable elementSalmonellaGenomic Islands030106 microbiologyBiologyIntegronmedicine.disease_causePolymerase Chain Reactionbeta-LactamasesIntegronsTransposition (music)03 medical and health sciencessymbols.namesakePlasmidSalmonellaDrug Resistance Multiple BacterialmedicineHumansPharmacology (medical)Proteus mirabilisPharmacologySanger sequencingGeneticsWhole Genome SequencingGenetic Variationbiology.organism_classificationProteus mirabilisEnterobacteriaceaeAnti-Bacterial AgentsHospitalizationInfectious DiseasesGenes Bacterialsymbolsbiology.proteinFranceProteus InfectionsPlasmidsJournal of Antimicrobial Chemotherapy
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Detection and organization of atrazine-degrading genetic potential of seventeen bacterial isolates belonging to divergent taxa indicate a recent comm…

2007

A collection of 17 atrazine-degrading bacteria isolated from soils was studied to determine the composition of the atrazine-degrading genetic potential (i.e. trzN, trzD and atz) and the presence of IS1071. The characterization of seven new atrazine-degrading bacteria revealed for the first time the trzN-atzBC gene composition in Gram-negative bacteria such as Sinorhizobium sp. or Polaromonas sp. Three main atrazine-degrading gene combinations (i) trzN– atzBC, (ii) atzABC– trzD and (iii) atzABCDEF were observed. The atz and trz genes were often located on plasmids, suggesting that plasmid conjugation could play an important role in their dispersion. In addition, the observation of these gene…

DNA BacterialGene Transfer HorizontalATRAZINEMolecular Sequence DataBIODEGRADATIONatrazine; insertion sequences; biodegradation; atz genes; trz genesBiologyMicrobiologyMicrobiologyEvolution MolecularTransposition (music)03 medical and health scienceschemistry.chemical_compoundPlasmidGram-Negative BacteriaATZ GENESGeneticsInsertion sequenceMolecular BiologyGeneSoil MicrobiologySEQUENCE D'INSERTION030304 developmental biologyRecombination GeneticGenetics0303 health sciencesINSERTION SEQUENCES030306 microbiologyCatabolismChromosomeSequence Analysis DNATRZ GENESbiology.organism_classification[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryGenes BacterialDNA Transposable ElementsMetabolic Networks and PathwaysDNABacteriaPlasmids
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Rapid 96-well plates DNA extraction and sequencing procedures to identify genome-wide transposon insertion sites in a difficult to lyse bacterium: La…

2014

International audience; Random transposon mutagenesis followed by adequate screening methods is an unavoidable procedure to characterize genetics of bacterial adaptation to environmental changes. We have recently constructed a mutant library of Lactobacillus casei and we aimed to fully annotate it. However, we have observed that, for L. casei which is a difficult to lyse bacterium, methods used to identify the transposon insertion site in a few mutants (transposon rescue by restriction and recircularization or PCR-based methods) were not transposable for a larger number because they are too time-consuming and sometimes not reliable. Here, we describe a method for large-scale and reliable id…

DNA BacterialGenetics MicrobialMicrobiology (medical)Transposable elementtransposon mutagenesisLactobacillus caseiSanger sequencingMutantMicrobiologyGenomeInsertional mutagenesis03 medical and health sciencesBacterial geneticsMESH: Gene LibraryLactic acid bacteriaMolecular BiologyDNA extractionMESH: High-Throughput Nucleotide SequencingGene Library030304 developmental biologyGenetics0303 health sciencesbiologyMESH: Lactobacillus casei030306 microbiologyHigh-Throughput Nucleotide SequencingMESH: Genetics Microbialbiology.organism_classificationDNA extractionMESH: DNA Bacterial[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyLacticaseibacillus caseiMutagenesis Insertionalgenomic DNAMESH: DNA Transposable ElementsMESH: Mutagenesis InsertionalDNA Transposable ElementsTransposon mutagenesisLactobacillus casei
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Fitness drift of an atrazine-degrading population under atrazine selection pressure.

2008

International audience; Pseudomonas sp. ADP harbouring the atrazine catabolic plasmid ADP1 was subcultured in liquid medium containing atrazine as sole source of nitrogen. After approximately 320 generations, a new population evolved which replaced the initial population. This newly evolved population grew faster and degraded atrazine more rapidly than the initial population. Plasmid profiles and Southern blot analyses revealed that the evolved strain, unlike the ancestral strain, presented a tandem duplication of the atzB gene encoding the second enzyme of the atrazine catabolic pathway responsible for the transformation of hydroxyatrazine to N-isopropylammelide. This duplication resulted …

DNA BacterialPopulationBiologyMicrobiologyPSEUDOMONAS SP03 medical and health scienceschemistry.chemical_compoundPlasmidGene DuplicationPseudomonasGene duplicationELEMENTSDirect repeatAtrazineInsertion sequenceSelection GeneticADAPTATIONeducationEcology Evolution Behavior and Systematics030304 developmental biologyGenetics0303 health scienceseducation.field_of_study030306 microbiologySALMONELLA-TYPHIMURIUMSTRAIN ADPCATABOLISM GENESTransformation (genetics)Blotting Southern[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryGenes BacterialBACTERIADNA Transposable ElementsGROWTHAtrazineTandem exon duplicationPLASMIDRESISTANCEPlasmidsEnvironmental microbiology
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Definition of the single integration site of the pathogenicity locus in Clostridium difficile.

1996

We determined the nucleotide sequence 3.8 kb upstream and 5.2 kb downstream of the toxin genes A and B of Clostridium difficile. Nine ORFs were discovered. Based on PCR-directed approaches, two were attributed to the pathogenicity locus (PaLoc). The other seven were found in every C. difficile isolate obtained from the human gastrointestinal tract, respectless of their toxinogenicity. The ORFs cdu1 and cdu2/2' upstream of the PaLoc displayed similarity to repressors of Gram-positive bacteria (cdu1), and to an Na+/H+ antiporter described for Enterococcus hirae (cdu2/2'). Downstream of the locus a putative ABC transporter (cdd2-4) was identified. With a set of three paired primers used in pol…

DNA BacterialSequence analysisBacterial ToxinsMolecular Sequence DataVirulenceLocus (genetics)BiologyEnterotoxinsOpen Reading FramesBacterial ProteinsSpecies SpecificityGeneticsHumansAmino Acid SequenceORFSGeneGeneticsBase SequenceSequence Homology Amino AcidVirulenceClostridioides difficileNucleic acid sequenceGeneral MedicineMolecular biologyIntestinesTerminator (genetics)DNA Transposable ElementsATP-Binding Cassette TransportersMobile genetic elementsGene
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Identification of Critical Genes for Growth in Olive Brine by Transposon Mutagenesis of Lactobacillus pentosus C11

2013

ABSTRACT Olive brine represents a stressful environment due to the high NaCl concentration, presence of phenolic compounds known as antimicrobials, and low availability of nutrients. Thus, only a few strains of lactic acid bacteria (LAB) are adapted to grow in and ferment table olives. To identify the mechanisms by which these few strains are able to grow in olive brine, Lactobacillus pentosus C11, a particularly resistant strain isolated from naturally fermented table olives, was mutagenized by random transposition using the P junc -TpaseIS 1223 system (H. Licandro-Seraut, S. Brinster, M. van de Guchte, H. Scornec, E. Maguin, P. Sansonetti, J. F. Cavin, and P. Serror, Appl. Environ. Microb…

DNA Bacterial[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesPROTEIN EXPRESSIONMutantGREEN OLIVESGenetics and Molecular BiologyLactobacillus pentosusSodium ChlorideBINDING PROTEINmedicine.disease_causeApplied Microbiology and BiotechnologyMicrobiology03 medical and health scienceschemistry.chemical_compoundBriningOleaLACTIC-ACBACTERIAmedicineSTRESS-RESPONSE[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesEscherichia coliGene Library030304 developmental biology2. Zero hunger0303 health sciencesEcologybiologyReverse Transcriptase Polymerase Chain ReactionSTARTER CULTURE030306 microbiologyPHENOLIC-COMPOUNDSbiology.organism_classificationLactic acidLactobacilluschemistryMutagenesisTABLE OLIVESESCHERICHIA-COLIFermentationDNA Transposable ElementsFood MicrobiologySaltsFermentationTransposon mutagenesisPLANTARUM LPCO10Multiplex Polymerase Chain ReactionBacteriaFood ScienceBiotechnologyApplied and Environmental Microbiology
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A heterochromatic P sequence in the D. subobscura genome.

1994

The study of a heterochromatic P sequence of D. subobscura reveals that it is a degraded element, located at the centromeric region of the A chromosome (X chromosome in this species), and that it is strongly diverged from the euchromatic P sequences previously described in this species. This heterochromatic sequence is composed of some P element fragments embedded in undefined beta-heterochromatic sequences. These mosaic P sequences do not show any transcriptional activity and seem to be ancient parasites of the D. subobscura genome. Phylogenetic analyses indicate that both the euchromatic and heterochromatic P sequences of D. subobscura could come from an ancestral element which was presen…

DNA ComplementaryX ChromosomeEuchromatinTranscription GeneticHeterochromatinMolecular Sequence DataPlant ScienceBiologyGenomeP elementHeterochromatinGeneticsAnimalsCloning MolecularX chromosomePhylogenySequence (medicine)GeneticsPhylogenetic treeBase SequenceChromosomeChromosome MappingGeneral MedicineSequence Analysis DNAInsect ScienceDNA Transposable ElementsAnimal Science and ZoologyDrosophilaSequence AlignmentGenetica
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A Mutation With Major Effects on Drosophila melanogaster Sex Pheromones

2005

0016-6731 (Print) Comparative Study Journal Article Research Support, Non-U.S. Gov't; Sex pheromones are intraspecific chemical signals that are crucial for mate attraction and discrimination. In Drosophila melanogaster, the predominant hydrocarbons on the cuticle of mature female and male flies are radically different and tend to stimulate or inhibit male courtship, respectively. This sexual difference depends largely upon the number of double bonds (one in males and two in females) added by desaturase enzymes. A mutation was caused by a PGal4 transposon inserted in the desat1 gene that codes for the desaturase crucial for setting these double bonds. Homozygous mutant flies produced 70-90%…

Fatty Acid DesaturasesMaleChromatography GasPeriod (gene)Analysis of Variance Animals Chromatography Gas DNA Primers DNA Transposable Elements/genetics Drosophila Proteins/*genetics/metabolism Drosophila melanogaster/enzymology/*genetics Fatty Acid Desaturases/*genetics/metabolism Female Gene Components Hexanes/chemistry Hydrocarbons/chemistry/isolation & purification Male Mutation/*genetics Reverse Transcriptase Polymerase Chain Reaction Sex Attractants/analysis/*biosynthesis Sex Factors Species SpecificityMutation/*geneticsMutantHexanes/chemistryInvestigationsDrosophila Proteins/*genetics/metabolismHydrocarbons/chemistry/isolation & purificationSex FactorsFatty Acid Desaturases/*genetics/metabolismSpecies SpecificityGeneticsDrosophila ProteinsHexanesAnimalsSex Attractants/analysis/*biosynthesis[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Sex AttractantsAlleleDrosophila melanogaster/enzymology/*geneticsGeneComputingMilieux_MISCELLANEOUSDNA PrimersGeneticsAnalysis of VarianceChromatographybiologyReverse Transcriptase Polymerase Chain Reactionfungibiology.organism_classificationMolecular biologyHydrocarbonsDNA Transposable Elements/geneticsSexual dimorphismDrosophila melanogasterGene ComponentsGas[ SDV.NEU ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Sex pheromoneMutationDNA Transposable ElementsSex AttractantsFemaleDrosophila melanogasterGenetics
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Clostridium difficile IStron CdISt1: Discovery of a Variant Encoding Two Complete Transposase-Like Proteins

2004

ABSTRACT Screening a Clostridium difficile strain collection for the chimeric element Cd ISt1 , we identified two additional variants, designated Cd ISt1 -0 and Cd ISt1 -III. In in vitro assays, we could prove the self-splicing ribozyme activity of these variants. Structural comparison of all known Cd ISt1 variants led us to define four types of IStrons that we designated Cd ISt1 -0 through Cd ISt1 -III. Since Cd ISt1 -0 encodes two complete transposase-like proteins (TlpA and TlpB), we suggest that it represents the original genetic element, hypothesized before to have originated by fusion of a group I intron and an insertion sequence element.

Genetics0303 health sciencesbiology030306 microbiologyClostridioides difficileStrain (biology)Bacteriophages Transposons and PlasmidsMolecular Sequence DataRibozymeIntronTransposasesClostridium difficilebiology.organism_classificationMicrobiologyIntrons03 medical and health sciencesGenes Bacterialbiology.proteinBacteriologyDNA Transposable ElementsClostridiaceaeInsertion sequenceMolecular BiologyTransposase030304 developmental biology
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Plasmid localisation of atrazine-degrading genes in newly described Chelatobacter and Arthrobacter strains

2002

Abstract In a previous study, we isolated a collection of atrazine-degrading bacteria from various soils. The aim of this study was to localise the atrazine-degrading genes in these 25 atrazine-degrading strains. In the case of the Gram-negative strains of Chelatobacter heintzii, six to seven plasmids were observed. The atzABC and trzD genes were located on two or three plasmids with variable molecular masses. For the Gram-positive strains of Arthrobacter crystallopoietes, the atzBC genes were located on a single plasmid of 117 kb. The organisation of atrazine-degrading genes seems to be highly variable between the strains studied. We have shown by a specific PCR the occurrence of IS1071-li…

GeneticsTransposable element0303 health sciencesEcologybiology030306 microbiologyBIOLOGIE MOLECULAIREbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyArthrobacter crystallopoietesMicrobiologylaw.invention03 medical and health sciencesPlasmid[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologylawArthrobacterInsertion sequence[SDV.MP] Life Sciences [q-bio]/Microbiology and ParasitologyGeneBacteriaPolymerase chain reactionComputingMilieux_MISCELLANEOUS030304 developmental biology
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